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首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Early abscisic acid signal transduction mechanisms: newly discovered components and newly emerging questions.
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Early abscisic acid signal transduction mechanisms: newly discovered components and newly emerging questions.

机译:早期脱落酸信号转导机制:新发现的成分和新出现的问题。

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摘要

The plant hormone abscisic acid (ABA) regulates many key processes in plants, including seed germination and development and abiotic stress tolerance, particularly drought resistance. Understanding early events in ABA signal transduction has been a major goal of plant research. The recent identification of the PYRABACTIN (4-bromo-N-[pyridin-2-yl methyl]naphthalene-1-sulfonamide) RESISTANCE (PYR)/REGULATORY COMPONENT OF ABA RECEPTOR (RCAR) family of ABA receptors and their biochemical mode of action represents a major breakthrough in the field. The solving of PYR/RCAR structures provides a context for resolving mechanisms mediating ABA control of protein-protein interactions for downstream signaling. Recent studies show that a pathway based on PYR/RCAR ABA receptors, PROTEIN PHOSPHATASE 2Cs (PP2Cs), and SNF1-RELATED PROTEIN KINASE 2s (SnRK2s) forms the primary basis of an early ABA signaling module. This pathway interfaces with ion channels, transcription factors, and other targets, thus providing a mechanistic connection between the phytohormone and ABA-induced responses. This emerging PYR/RCAR-PP2C-SnRK2 model of ABA signal transduction is reviewed here, and provides an opportunity for testing novel hypotheses concerning ABA signaling. We address newly emerging questions, including the potential roles of different PYR/RCAR isoforms, and the significance of ABA-induced versus constitutive PYR/RCAR-PP2C interactions. We also consider how the PYR/RCAR-PP2C-SnRK2 pathway interfaces with ABA-dependent gene expression, ion channel regulation, and control of small molecule signaling. These exciting developments provide researchers with a framework through which early ABA signaling can be understood, and allow novel questions about the hormone response pathway and possible applications in stress resistance engineering of plants to be addressed.
机译:植物激素脱落酸(ABA)调节植物的许多关键过程,包括种子发芽和发育以及非生物胁迫耐受性,特别是抗旱性。了解ABA信号转导的早期事件一直是植物研究的主要目标。 ABA受体(RCAR)家族ABA受体的PYRABACTIN(4-溴-N- [吡啶-2-基甲基]萘-1-磺酰胺)耐药性(PYR)/调节成分及其生化作用方式的最新鉴定代表了该领域的重大突破。 PYR / RCAR结构的解决为解决介导ABA控制蛋白质-蛋白质相互作用的下游信号传导机制提供了背景。最近的研究表明,基于PYR / RCAR ABA受体,蛋白磷酸酶2Cs(PP2Cs)和SNF1相关蛋白激酶2s(SnRK2s)的途径构成了早期ABA信号传导模块的主要基础。该途径与离子通道,转录因子和其他靶标相互作用,从而在植物激素和ABA诱导的反应之间提供了机械联系。本文回顾了这种新兴的ABA信号转导的PYR / RCAR-PP2C-SnRK2模型,并为检验有关ABA信号的新假设提供了机会。我们解决了新出现的问题,包括不同PYR / RCAR亚型的潜在作用,以及ABA诱导的本构PYR / RCAR-PP2C相互作用的重要性。我们还考虑了PYR / RCAR-PP2C-SnRK2途径如何与ABA依赖的基因表达,离子通道调节和小分子信号传导的控制相互作用。这些激动人心的进展为研究人员提供了一个框架,通过该框架可以了解早期ABA信号传导,并可以解决有关激素应答途径以及在植物抗逆性工程中可能应用的新问题。

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